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用取向单层多面体膜进行芳烃-脂肪烃分离

Aromatic-aliphatic hydrocarbon separation with oriented monolayer polyhedral membrane.

作者信息

Sun Hao, Wang Naixin, Xu Yinghui, Wang Fengkai, Lu Jun, Wang Huanting, An Quan-Fu

机构信息

Beijing Key Laboratory for Green Catalysis and Separation, Department of Chemical Engineering, College of Materials Science and Engineering, Beijing University of Technology, Beijing, China.

Department of Chemical and Biological Engineering, Monash University, Victoria, Australia.

出版信息

Science. 2024 Nov 29;386(6725):1037-1042. doi: 10.1126/science.adq5577. Epub 2024 Nov 28.

Abstract

Aromaticaliphatic hydrocarbon separation is a challenging but important industrial process. Pervaporation membrane technology has the potential for separating these mixtures. We developed an oriented monolayer polyhedral (OMP) membrane that consists of a monolayer of ordered polyhedral particles and is anchored by hyperbranched polymers. It contains a high density of straight, selective nanochannels, enabling the preferential transport of aromatic molecules. Compared with traditional mixed-matrix membranes with random orientations, the OMP membrane improves the pervaporation separation index for aromatic-aliphatic hydrocarbon mixtures with C and C compounds, surpassing the performance of existing membranes by 3 to 10 times. This high performance demonstrates the potential of OMP membranes for hydrocarbon molecular separation and their application in the value-added separation of naphtha feedstocks.

摘要

芳族脂肪烃分离是一个具有挑战性但重要的工业过程。渗透汽化膜技术有分离这些混合物的潜力。我们开发了一种取向单层多面体(OMP)膜,它由单层有序多面体颗粒组成,并由超支化聚合物固定。它包含高密度的直的、选择性纳米通道,能够优先传输芳香族分子。与具有随机取向的传统混合基质膜相比,OMP膜提高了含C和C化合物的芳族-脂肪族烃混合物的渗透汽化分离指数,其性能比现有膜高出3至10倍。这种高性能证明了OMP膜在烃分子分离方面的潜力及其在石脑油原料增值分离中的应用。

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